Sakai, 1980 - Google Patents
Photometric determination of copper with N-(dithiocarboxy) sarcosine after preconcentration with amberlite xad-2 resinSakai, 1980
- Document ID
- 13970720719352694505
- Author
- Sakai Y
- Publication year
- Publication venue
- Talanta
External Links
Snippet
The copper (II) chelate of N-(dithiocarboxy) sarcosine (DTCS) is sorbed on a column of Amberlite XAD-2 resin from a pH-7 phosphate solution (0.1M) and stripped with a pH-9.0 ammonia solution (0.2M) in 60% methanol. The absorbance of the eluted chelate is …
- 239000010949 copper 0 title abstract description 29
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Chakraborti et al. | Determination of trace metals in natural waters at nanogram per liter levesls by electrothermal atomic absorption spectrometry after extraction with sodium diethyldithiocarbamate | |
KR900001417B1 (en) | Mercury-nickel mixing reagent for using cancer diagnosis | |
Yotsuyanagi et al. | Highly selective and sensitive spectrophotometric determination of iron (II) and cobalt (III) with 4-(2-pyridylazo) resorcinol (PAR) | |
Sakai | Photometric determination of copper with N-(dithiocarboxy) sarcosine after preconcentration with amberlite xad-2 resin | |
Recalde-Ruiz et al. | Fluorimetric flow injection and flow-through sensing systems for cyanide control in waste water | |
Thompson et al. | The simultaneous determination of arsenic, antimony, bismuth, selenium and tellurium in waters by an inductively coupled plasma/volatile hydride method | |
Ramachandran et al. | Spectrophotometric determination of selenium with 6-amino-1-naphthol-3-sulphonic acid (J-acid) and its application in trace analysis | |
Otu et al. | Ion chromatography of cyanide and metal cyanide complexes: a review | |
Chen et al. | Organic solvent-soluble membrane filters for the preconcentration and spectrophotometric determination of iron (II) traces in water with Ferrozine | |
Mohammad et al. | On-line preconcentration of aluminium, gallium and indium with quinolin-8-ol for determination by atomic absorption spectrometry | |
Davison et al. | Interference studies in the batch determination of nitrate in freshwater by reduction with cadmium to nitrite | |
Nigo et al. | Ion-exchanger colorimetry—VII Microdetermination of iron (II) and iron (III) in natural water | |
Miwa et al. | Speciation of copper in fresh waters | |
Okumura et al. | In situ preconcentration method for iron (II) in environmental water samples using solid phase extraction followed by spectrophotometric determination | |
Pal et al. | Spectrofluorimetric determination of molybdenum in some real and environmental samples | |
Valenta | Voltammetric Studies on Trace Metal Speciation in Natural Waters Part I: Methods | |
Gadia et al. | Rapid spectrophotometric analysis of total and ionic iron in the μ g range | |
Quentel et al. | Speciation analysis of selenium in seawater by cathodic stripping voltammetry | |
Ohzeki et al. | Determination of trace amounts of cobalt (II) by thin-layer spectrophotometry after enrichment on a membrane filter as the PAN complex | |
Kallmann et al. | Determination of Cadmium in Zinc Concentrates and Other Zinc-Rich Materials. Cation Procedure | |
Kiriyama et al. | Combined anion-exchange separation and spectrophotometric determination of traces of titanium in sea water | |
Sandhu et al. | Concentration and separation of arsenic from polluted water by ion exchange | |
Pohlandt | Chromatographic separation and determination of stable metal cyanide complexes in gold processing solutions | |
Toshimitsu et al. | Ion-exchanger colorimetry—IV microdetermination of bismuth in water | |
Komata et al. | A highly sensitive spectrophotometric determination of cadmium with α, β, γ, δ-tetrakis (4-N-trimethylaminophenyl)-porphine |